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Ex situ IR reflection-absorption and in situ AFM electrochemical characterisation of the 1,2-bis(trimethoxysilyl)ethane-based protective coating on AA 2024 alloy

机译:AA 2024合金上1,2-双(三甲氧基甲硅烷基)乙烷基保护涂层的异位红外反射吸收和原位AFM电化学表征

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The organic-inorganic protective coatings for the aluminium alloy AA 2024-T3 were produced from a precursor 1,2-bis(trimethoxysilyl)ethane. The structural properties of the coatings were analysed using SEM, EDS, contact angles and IR reflection-absorption at the near grazing incidence angle conditions. Moreover, the forced degradation of the protective coatings at the anodic potentials was studied by various means of the ex situ and in situ analytical approaches with the aim to verify their applicability. The ex situ IR reflection-absorption spectroscopy revealed the prominent changes in the bands like hydration of coatings, cleavage of some siloxane bonds, changes in the regions of C-H vibrations and breaking of some Si-O-Al bonds. The in situ electrochemical AFM approach revealed a decrease in the surface roughness during immersion of the coating, followed by the pretty similar values during application of the chronocoulometric pulses. The impedance spectroscopy indirectly confirmed a gradual dissolution/degradation of the coating. (C) 2015 Elsevier Ltd. All rights reserved.
机译:铝合金AA 2024-T3的有机-无机保护涂层是由前体1,2-双(三甲氧基甲硅烷基)乙烷制成的。在接近掠入射角的条件下,使用SEM,EDS,接触角和红外反射吸收对涂层的结构性能进行了分析。此外,还通过各种非原位和原位分析方法研究了在阳极电位下保护性涂层的强制降解,目的是验证其适用性。异位红外反射吸收光谱显示出谱带的显着变化,例如涂层的水化,某些硅氧烷键的断裂,C-H振动区域的变化以及某些Si-O-Al键的断裂。原位电化学原子力显微镜方法显示了涂层浸没过程中表面粗糙度的降低,随后在计时电容法脉冲施加过程中出现了非常相似的值。阻抗光谱法间接证实了涂层的逐渐溶解/降解。 (C)2015 Elsevier Ltd.保留所有权利。

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